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CAT130041LWI-GT3 Datenblatt(PDF) 7 Page - Catalyst Semiconductor

Teilenummer CAT130041LWI-GT3
Bauteilbeschribung  Voltage Supervisor with Microwire Serial CMOS EEPROM
Download  14 Pages
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Hersteller  CATALYST [Catalyst Semiconductor]
Direct Link  http://www.catalyst-semiconductor.com
Logo CATALYST - Catalyst Semiconductor

CAT130041LWI-GT3 Datenblatt(HTML) 7 Page - Catalyst Semiconductor

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CAT130xx
© 2007 Catalyst Semiconductor, Inc.
7
Doc. No. 1121 Rev. A
Characteristics subject to change without notice
Instructions, addresses, and write data are clocked
into the DI pin on the rising edge of the clock (SK).
The DO pin is normally in a high impedance state
except when reading data from the device, or when
checking the ready/busy status during a write
operation. The serial communication protocol follows
the timing shown in Figure 3.
The ready/busy status can be determined after the
start of internal write cycle by selecting the device (CS
high) and polling the DO pin; DO low indicates that the
write operation is not completed, while DO high
indicates that the device is ready for the next
instruction. If necessary, the DO pin may be placed
back into a high impedance state during chip select by
shifting a dummy “1” into the DI pin. The DO pin will
enter the high impedance state on the rising edge of
the clock (SK). Placing the DO pin into the high
impedance state is recommended in applications
where the DI pin and the DO pin are to be tied
together to form a common DI/O pin. The Ready/Busy
flag can be disabled only in Ready state; no change is
allowed in Busy state.
Read
Upon receiving a READ command and an address
(clocked into the DI pin), the DO pin of the CAT130xx
will come out of the high impedance state and, after
sending an initial dummy zero bit, will begin shifting
out the data addressed (MSB first). The output data
bits will toggle on the rising edge of the SK clock and
are stable after the specified time delay (tPD0 or tPD1).
The READ instruction timing is illustrated in Figure 4.
For the CAT13004/08/16, after the initial data word
has been shifted out and CS remains asserted with
the SK clock continuing to toggle, the device will auto-
matically increment to the next address and shift out
the next data word in a sequential READ mode. As
long as CS is continuously asserted and SK continues
to toggle, the device will keep incrementing to the next
address automatically until it reaches to the end of the
address space, then loops back to address 0. In the
sequential READ mode, only the initial data word is
preceeded by a dummy zero bit. All subsequent data
words will follow without a dummy zero bit.
Figure 3. Sychronous Data Timing
Figure 4. Read Instruction Timing
SK
DI
CS
DO
tDIS
tPD0,tPD1
tCSMIN
tCSS
tDIS
tDIH
tSKHI
tCSH
VALID
VALID
DATA VALID
tSKLOW
SK
CS
DI
DO
tCSMIN
STANDBY
tHZ
HIGH-Z
HIGH-Z
11
0
AN AN-1
A0
0
DN DN-1
D1
D0
tPD0


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